Lisle, IL, United States of America

Webster W Kiang


Average Co-Inventor Count = 1.0

ph-index = 1

Forward Citations = 33(Granted Patents)


Company Filing History:


Years Active: 1987

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1 patent (USPTO):Explore Patents

Title: The Innovative Work of Webster W. Kiang

Introduction

Webster W. Kiang is an accomplished inventor based in Lisle, Illinois. His contributions to the field of polymers are noteworthy, particularly his work with heat sealable blends that have implications for various applications in the packaging industry.

Latest Patents

Kiang holds a significant patent for a "Heat sealable blend of polypropylene terpolymers and linear low density," which showcases a polymer blend useful for forming heat sealable plastic films. This innovative blend comprises between 40% to 60% of a polypropylene terpolymer with specific mole percentages of ethylene and 1-butene, combined with 40% to 60% of a copolymer of ethylene and alpha olefins containing four or more carbon atoms. This invention exemplifies his ingenuity and understanding of polymer chemistry, aimed at enhancing the functionality and applications of plastic materials.

Career Highlights

Throughout his career, Kiang has been associated with Enron Chemical Company, where he has contributed his expertise in polymer science. His work has had a lasting impact on the development of advanced materials, specifically in improving heat sealing properties, which are critical in packaging and other industrial applications.

Collaborations

Kiang's innovative journey reflects a collaborative spirit, often working alongside fellow researchers and professionals at Enron Chemical Company. This synergy has led to advancements in material science and has kept him at the forefront of polymer technology.

Conclusion

Webster W. Kiang stands out as a valuable inventor whose contributions to polymer blends continue to shape the landscape of packaging materials. His patent reflects a combination of creativity and scientific knowledge, making significant strides in the field of material innovations. As industries evolve, Kiang's work will likely continue to influence advancements in the use of polymers.

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